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Fast, multi-band photon detectors based on quantum well devices for beam-monitoring in new generation light sources

机译:基于量子阱设备的快速多波段光子探测器,用于新一代光源的光束监测

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摘要

In order to monitor the photon-beam position for both diagnostics and calibration purposes, we have investigated the possibility to use InGaAs/InAlAsudQuantum Well (QW) devices as position-sensitive photon detectors for Free-Electron Laser (FEL) or Synchrotron Radiation (SR).udOwing to their direct, low-energy band gap and high electron mobility, such QW devices may be used also at Room Temperature (RT) as fast multi-band sensors for photons ranging from visible light to hard X-rays. Moreover, internal charge-amplification mechanism can be applied for very low signal levels, while the high carrier mobility allows the design of very fast photon detectors with sub-nanosecond response times. Segmented QW sensors have been preliminary tested with 100-fs-wide 400 nm laser pulses and X-ray SR. The reported results indicate that these devices respond with 100 ps rise-times to such ultra-fast laser pulses. Besides, linear scan on the back-pixelated device has shown that these detectors are sensitive to the position of each ultrashort beam bunch.
机译:为了监视光子束位置以用于诊断和校准目的,我们研究了将InGaAs / InAlAs udQuantum Well(QW)器件用作自由电子激光器(FEL)或同步辐射的位置敏感光子探测器的可能性由于其直接的低能带隙和高的电子迁移率,这种QW器件也可以在室温(RT)下用作快速多波段传感器,用于从可见光到硬X射线的光子。此外,内部电荷放大机制可用于非常低的信号电平,而高载流子迁移率允许设计具有亚纳秒响应时间的非常快速的光子检测器。分段QW传感器已通过100 fs宽的400 nm激光脉冲和X射线SR进行了初步测试。报告的结果表明,这些设备对这种超快速激光脉冲的响应时间为100 ps。此外,在背面像素化设备上的线性扫描表明,这些检测器对每个超短光束束的位置都敏感。

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